Department of Biological Sciences, Tokyo Metropolitan University, Hachioji, Japan.
Department of Arts and Sciences, International Christian University, Mitaka, Japan.
J Morphol. 2021 May;282(5):679-684. doi: 10.1002/jmor.21338. Epub 2021 Feb 26.
Holometabolous insects are alternatively named "Endopterygota" because, in the larvae of many taxa, the wing primordia in the lateral regions of the meso- and metathoracic segments form more or less invaginated structures called wing imaginal discs. Holometabolous insects exhibit differential developmental timing of the wing during ontogeny. The condition in which wing growth is deferred until the end of larval life has been considered ancestral, whereas early disc formation has been recognized as the derived condition. Even though wing disc development in holometabolous insects has been studied extensively in select groups, many questions remain about the development of the wing imaginal disc in the orders Raphidioptera, Megaloptera, Neuroptera, and Mecoptera. To clarify whether the wing imaginal disc of Neuroptera is typical of the derived condition, we examined the ontogeny of the wing imaginal discs in the lacewing Mallada desjardinsi histologically. Using both light microscopy and transmission electron microscopy, we were able to recognize wing imaginal discs in the penultimate larval instar (prefinal larval instar) of this species. To date, neuropteran insects have been characterized as having late-forming wing imaginal discs. However, our findings show that the developmental pattern of the wing imaginal discs within the Neuroptera represents a more derived pattern of development in the Holometabola than was assumed previously.
全变态昆虫又被称为“内翅类”,因为在许多类群的幼虫中,位于中胸和后胸节的侧区的翅原基形成或多或少内陷的结构,称为翅胚盘。全变态昆虫在个体发育过程中表现出翅膀发育的不同时间差异。翅膀生长延迟到幼虫生命结束的状态被认为是原始的,而早期盘状结构的形成则被认为是衍生的状态。尽管全变态昆虫的翅膀盘状结构在一些特定类群中已经得到了广泛研究,但关于鳞翅目、脉翅目、蜚蠊目和长翅目昆虫的翅膀胚盘发育仍有许多问题尚未解决。为了阐明脉翅目昆虫的翅膀胚盘是否具有衍生状态的典型特征,我们对长尾水青蛾 Mallada desjardinsi 的翅膀胚盘的个体发生进行了组织学研究。通过使用光学显微镜和透射电子显微镜,我们能够在该物种的倒数第二龄幼虫(预终龄幼虫)中识别出翅膀胚盘。迄今为止,脉翅目昆虫的翅膀胚盘被描述为晚期形成。然而,我们的发现表明,在全变态类中,神经翅目昆虫的翅膀胚盘发育模式比之前假设的更为衍生。